Application Fields


By-Product Hydrogen Combined Heat and Power

  Combined Heat and Power (CHP) represents the thermodynamically efficient utilization of fuel. In stand-alone power generation, the heat generated from fuel combustion must be discarded as waste heat, whereas in CHP, all or part of this thermal energy can be harnessed for the production of hot water for industrial or domestic heating or for absorption refrigeration. 

>>   Advantages of Cogeneration   <<

Increase power supply

Can greatly reduce the dependence on the power grid

Comprehensive utilization of energy to improve production efficiency

Improve energy efficiency

The energy conversion rate of hydrogen power generation is over 40%

If the heat generated by the reaction can be used

Energy conversion rate can reach 90%

Environmental friendly

The only emission from hydrogen cogeneration is water

Energy saving

Make full use of the electricity and heat generated by energy sources

Save resources and improve heating/cooling quality

>> Applicable Scenarios  <<

For enterprises that produce hydrogen as a by-product and have no other targeted uses for the hydrogen, cogeneration will greatly optimize the utilization of their by-product hydrogen.

Off-island facilities that use hydrogen energy for off-grid power supply can provide cooling and heating while supplying electricity, maximizing the use of hydrogen energy.

In areas where there is a large difference in peak-valley electricity prices, hydrogen energy can be used to adjust power generation to reduce peaks and fill valleys, while also providing cooling/heating.

>> Expected Promotion Progress  <<

2022

Completed MW-level cogeneration R&D and design

2024

Completed verification operation in the plant

2025

6MW cogeneration project demonstration operation

2026

Implement the integrated energy solution of "wind, solar, hydrogen, electricity, cooling, heat and storage" with cogeneration as the core module